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凝血因子 XIII 的非催化 B 亚基可加速纤维蛋白交联。

The Non-catalytic B Subunit of Coagulation Factor XIII Accelerates Fibrin Cross-linking.

作者信息

Souri Masayoshi, Osaki Tsukasa, Ichinose Akitada

机构信息

From the Department of Molecular Patho-Biochemistry and Patho-Biology, Yamagata University School of Medicine, 2-2-2 Iida-Nishi, Yamagata, 990-9585 Japan.

From the Department of Molecular Patho-Biochemistry and Patho-Biology, Yamagata University School of Medicine, 2-2-2 Iida-Nishi, Yamagata, 990-9585 Japan

出版信息

J Biol Chem. 2015 May 8;290(19):12027-39. doi: 10.1074/jbc.M114.608570. Epub 2015 Mar 25.

Abstract

Covalent cross-linking of fibrin chains is required for stable blood clot formation, which is catalyzed by coagulation factor XIII (FXIII), a proenzyme of plasma transglutaminase consisting of catalytic A (FXIII-A) and non-catalytic B subunits (FXIII-B). Herein, we demonstrate that FXIII-B accelerates fibrin cross-linking. Depletion of FXIII-B from normal plasma supplemented with a physiological level of recombinant FXIII-A resulted in delayed fibrin cross-linking, reduced incorporation of FXIII-A into fibrin clots, and impaired activation peptide cleavage by thrombin; the addition of recombinant FXIII-B restored normal fibrin cross-linking, FXIII-A incorporation into fibrin clots, and activation peptide cleavage by thrombin. Immunoprecipitation with an anti-fibrinogen antibody revealed an interaction between the FXIII heterotetramer and fibrinogen mediated by FXIII-B and not FXIII-A. FXIII-B probably binds the γ-chain of fibrinogen with its D-domain, which is near the fibrin polymerization pockets, and dissociates from fibrin during or after cross-linking between γ-chains. Thus, FXIII-B plays important roles in the formation of a ternary complex between proenzyme FXIII, prosubstrate fibrinogen, and activator thrombin. Accordingly, congenital or acquired FXIII-B deficiency may result in increased bleeding tendency through impaired fibrin stabilization due to decreased FXIII-A activation by thrombin and secondary FXIII-A deficiency arising from enhanced circulatory clearance.

摘要

纤维蛋白链的共价交联是稳定血凝块形成所必需的,这一过程由凝血因子 XIII(FXIII)催化,FXIII 是一种血浆转谷氨酰胺酶的酶原,由催化性 A 亚基(FXIII-A)和非催化性 B 亚基(FXIII-B)组成。在此,我们证明 FXIII-B 可加速纤维蛋白交联。从补充了生理水平重组 FXIII-A 的正常血浆中去除 FXIII-B 会导致纤维蛋白交联延迟、FXIII-A 掺入纤维蛋白凝块减少以及凝血酶对活化肽的切割受损;添加重组 FXIII-B 可恢复正常的纤维蛋白交联、FXIII-A 掺入纤维蛋白凝块以及凝血酶对活化肽的切割。用抗纤维蛋白原抗体进行免疫沉淀显示,FXIII 异源四聚体与纤维蛋白原之间的相互作用是由 FXIII-B 而非 FXIII-A 介导的。FXIII-B 可能通过其 D 结构域与纤维蛋白原的γ链结合,该结构域靠近纤维蛋白聚合口袋,并在γ链交联期间或之后从纤维蛋白上解离。因此,FXIII-B 在酶原 FXIII、酶原底物纤维蛋白原和激活剂凝血酶之间三元复合物的形成中起重要作用。相应地,先天性或获得性 FXIII-B 缺乏可能由于凝血酶对 FXIII-A 的激活减少以及循环清除增强导致继发性 FXIII-A 缺乏,从而通过纤维蛋白稳定受损而导致出血倾向增加。

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